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BER performance enhancement for secure wireless optical communication systems based on chaotic MIMO techniques

机译:基于混沌MIMO技术的安全无线光通信系统的BER性能增强

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摘要

There has been a growing interest in the use of chaotic techniques for enabling secure communication in recent years. This need has been motivated by the emergence of a number of wireless services which require the channel to provide low bit error rates (BER) along with information security. The aim of such activity is to steal or distort the information being conveyed. Optical Wireless Systems (basically Free Space Optic Systems, FSO) are no exception to this trend. Thus, there is an urgent necessity to design techniques that can secure privileged information against unauthorized eavesdroppers while simultaneously protecting information against channel-induced perturbations and errors. Conventional cryptographic techniques are not designed for protecting information integrity when data is being transferred over a harsh communication medium. Hence, a separate channel coding protocol is often necessary to achieve this goal. Our work indicates that the use of a suitable Chaotic Shift Keying (CSK) map combined with an appropriate Space-Time Code (STC) can allow both requirements to be met. In this paper, we have concentrated on investigating the error rate performance of chaoticwireless optical communication links operating over atmospheric channel, where the turbulence-induced fading is described by the Gamma-Gamma and log- normal distributions. The main aim of the paper is to assess the feasibility of employing Space-Time Coded chaotic communications over Multiple Input Multiple Output (MIMO) communication channels. Our simulations indicate that the combination of the STC and tent map provides the best BER performance in addition to security when compared to the choice of other maps.
机译:近年来,人们越来越关注使用混沌技术来实现安全通信。大量无线服务的出现激发了这种需求,这些无线服务要求信道提供低比特误码率(BER)以及信息安全性。此类活动的目的是窃取或扭曲正在传达的信息。光学无线系统(基本上是自由空间光学系统,FSO)也不例外。因此,迫切需要设计一种技术,该技术可以保护特权信息免受未经授权的窃听者的侵害,同时保护信息免受信道引起的干扰和错误。当通过苛刻的通信介质传输数据时,常规的密码技术并未设计用于保护信息完整性。因此,通常需要单独的信道编码协议来实现该目标。我们的工作表明,将适当的混沌移位键控(CSK)映射与适当的时空码(STC)结合使用可以满足这两个要求。在本文中,我们集中于研究在大气信道上运行的混沌无线光通信链路的误码率性能,其中由Gamma-Gamma和对数正态分布描述了湍流引起的衰落。本文的主要目的是评估在多输入多输出(MIMO)通信信道上采用空时编码混沌通信的可行性。我们的仿真表明,与其他地图相比,STC和帐篷地图的组合提供了除安全性之外的最佳BER性能。

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